Overview
The BM-37XCD computer inverted biological Microscope has the characteristics of microscopic observation in a foster bottle or culture dish. The instrument is equipped with a long working distance objective lens and a long working distance flat-field color difference condenser, a wide-angle eyepiece, and a phase contrast device. It can observe transparent living bodies without staining. It is especially suitable for microscopic research of fluids, Sediments, etc. The instrument adopts an electric light source, and the luminance can be continuously adjusted. Compared with the chain lens barrel, it is inclined at 45 ° and can rotate 360 degrees freely.
Features
1. Inverted Biological Microscope Design Optical inspection path inverted, ray of light through the objective lens and then through the sample and then through the eyepiece, the sample is located above the Microscope
2. With a long working distance, it can accommodate larger or thicker samples such as culture dishes under the Microscope
3. Especially suitable for foster cell observation, can directly observe cell growth in culture dishes
4. May be equipped with a multi-channel observation system, supporting multiple observation modes such as fluorescence and differential interference
5. Optical inspection system with magnification 40X-640X
6. Equipped with long working distance condenser with variable light bar, working distance 55mm
7. Coarse and fretting coaxial focusing mechanism, fretting grid value 0.002mm
Principle
The Optical inspection path of the inverted Bio-Microscope is inverted, with the ray of light passing through the objective lens, then through the sample, and then through the eyepiece, so that the sample is located above the Microscope. This design, combined with a long working distance objective and a condenser lens, enables microscopic observation of the sample in a foster bottle or culture dish.
Applications
Scientific research, universities, agriculture and animal husbandry
Steps
1. Prepare samples in foster bottles or culture dishes
2. Place the sample on the Microscope stage
3. Adjust the pupil distance to within the range of 50-75mm
4. Use coarse and micro coaxial focusing devices for focusing
5. Adjust the luminance of the lighting system
6. Observation through eyepieces or computer imagery systems
7. For measurement analysis, use the supporting geometric measurement analysis software